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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Piezoelectric MEMS energy harvesting systems driven by harmonic and random vibrations
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Piezoelectric MEMS energy harvesting systems driven by harmonic and random vibrations

机译:由谐波和随机振动驱动的压电MEMS能量采集系统

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摘要

Switching power conditioning techniques are known to greatly enhance the performance of linear piezoelectric energy harvesters subject to harmonic vibrations. With such circuits, little is known about the effect of mechanical stoppers that limit the motion or about waveforms other than harmonic vibrations. This work presents SPICE simulations of piezoelectric micro energy harvester systems that differ in choice of power conditioning circuits and stopper models. We consider in detail both harmonic and random vibrations. The nonlinear switching conversion circuitry performs better than simple passive circuitry, especially when mechanical stoppers are in effect. Stopper loss is important under broadband vibrations. Stoppers limit the output power for sinusoidal excitations, but result in the same output power whether the stoppers are lossy or not. When the mechanical stoppers are hit by the proof mass during high-amplitude vibrations, nonlinear effects such as saturation and jumps are present.
机译:已知开关功率调节技术可以大大提高线性压电能量采集器遭受谐波振动的性能。对于这样的电路,对于限制运动的机械限位器的效果或除谐波振动以外的波形知之甚少。这项工作介绍了压电微能量采集器系统的SPICE仿真,这些仿真器在功率调节电路和制动器模型的选择上有所不同。我们详细考虑了谐波振动和随机振动。非线性开关转换电路的性能要优于简单的无源电路,特别是在机械止动器有效的情况下。塞子损耗在宽带振动下很重要。塞子限制了正弦激励的输出功率,但是无论塞子是否有损,其输出功率都相同。在高振幅振动期间,当机械止动器被质量块撞击时,会出现诸如饱和和跳跃之类的非线性效应。

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